// Copyright 1986-2014 Xilinx, Inc. All Rights Reserved.
// --------------------------------------------------------------------------------
// Tool Version: Vivado v.2014.4 (win64) Build 1071353 Tue Nov 18 18:29:27 MST 2014
// Date        : Thu Apr 30 01:39:16 2015
// Host        : Dtysky running 64-bit major release  (build 9200)
// Command     : write_verilog -force -mode funcsim
//               b:/Complex_Mind/FPGA-Imaging-Library/Geometry/AffineTrans/HDL/AffineTrans.srcs/sources_1/ip/AddSub26Sx26S/AddSub26Sx26S_funcsim.v
// Design      : AddSub26Sx26S
// Purpose     : This verilog netlist is a functional simulation representation of the design and should not be modified
//               or synthesized. This netlist cannot be used for SDF annotated simulation.
// Device      : xc7z010clg400-1
// --------------------------------------------------------------------------------
`timescale 1 ps / 1 ps

(* downgradeipidentifiedwarnings = "yes" *) (* x_core_info = "c_addsub_v12_0,Vivado 2014.4" *) (* CHECK_LICENSE_TYPE = "AddSub26Sx26S,c_addsub_v12_0,{}" *) 
(* core_generation_info = "AddSub26Sx26S,c_addsub_v12_0,{x_ipProduct=Vivado 2014.4,x_ipVendor=xilinx.com,x_ipLibrary=ip,x_ipName=c_addsub,x_ipVersion=12.0,x_ipCoreRevision=5,x_ipLanguage=VERILOG,x_ipSimLanguage=MIXED,C_VERBOSITY=0,C_XDEVICEFAMILY=zynq,C_IMPLEMENTATION=0,C_A_WIDTH=26,C_B_WIDTH=26,C_OUT_WIDTH=27,C_CE_OVERRIDES_SCLR=0,C_A_TYPE=0,C_B_TYPE=0,C_LATENCY=3,C_ADD_MODE=0,C_B_CONSTANT=0,C_B_VALUE=00000000000000000000000000,C_AINIT_VAL=0,C_SINIT_VAL=0,C_CE_OVERRIDES_BYPASS=1,C_BYPASS_LOW=0,C_SCLR_OVERRIDES_SSET=1,C_HAS_C_IN=0,C_HAS_C_OUT=0,C_BORROW_LOW=1,C_HAS_CE=0,C_HAS_BYPASS=0,C_HAS_SCLR=0,C_HAS_SSET=0,C_HAS_SINIT=0}" *) 
(* NotValidForBitStream *)
module AddSub26Sx26S
   (A,
    B,
    CLK,
    S);
  input [25:0]A;
  input [25:0]B;
  (* x_interface_info = "xilinx.com:signal:clock:1.0 clk_intf CLK" *) input CLK;
  output [26:0]S;

  wire [25:0]A;
  wire [25:0]B;
  wire CLK;
  wire [26:0]S;
  wire NLW_U0_C_OUT_UNCONNECTED;

(* C_AINIT_VAL = "0" *) 
   (* C_BORROW_LOW = "1" *) 
   (* C_CE_OVERRIDES_BYPASS = "1" *) 
   (* C_CE_OVERRIDES_SCLR = "0" *) 
   (* C_HAS_CE = "0" *) 
   (* C_HAS_SCLR = "0" *) 
   (* C_HAS_SINIT = "0" *) 
   (* C_HAS_SSET = "0" *) 
   (* C_IMPLEMENTATION = "0" *) 
   (* C_SCLR_OVERRIDES_SSET = "1" *) 
   (* C_SINIT_VAL = "0" *) 
   (* C_VERBOSITY = "0" *) 
   (* C_XDEVICEFAMILY = "zynq" *) 
   (* DONT_TOUCH *) 
   (* c_a_type = "0" *) 
   (* c_a_width = "26" *) 
   (* c_add_mode = "0" *) 
   (* c_b_constant = "0" *) 
   (* c_b_type = "0" *) 
   (* c_b_value = "00000000000000000000000000" *) 
   (* c_b_width = "26" *) 
   (* c_bypass_low = "0" *) 
   (* c_has_bypass = "0" *) 
   (* c_has_c_in = "0" *) 
   (* c_has_c_out = "0" *) 
   (* c_latency = "3" *) 
   (* c_out_width = "27" *) 
   (* downgradeipidentifiedwarnings = "yes" *) 
   AddSub26Sx26S_c_addsub_v12_0__parameterized0 U0
       (.A(A),
        .ADD(1'b1),
        .B(B),
        .BYPASS(1'b0),
        .CE(1'b1),
        .CLK(CLK),
        .C_IN(1'b0),
        .C_OUT(NLW_U0_C_OUT_UNCONNECTED),
        .S(S),
        .SCLR(1'b0),
        .SINIT(1'b0),
        .SSET(1'b0));
endmodule

(* ORIG_REF_NAME = "c_addsub_v12_0" *) (* C_VERBOSITY = "0" *) (* C_XDEVICEFAMILY = "zynq" *) 
(* C_IMPLEMENTATION = "0" *) (* C_A_WIDTH = "26" *) (* C_B_WIDTH = "26" *) 
(* C_OUT_WIDTH = "27" *) (* C_CE_OVERRIDES_SCLR = "0" *) (* C_A_TYPE = "0" *) 
(* C_B_TYPE = "0" *) (* C_LATENCY = "3" *) (* C_ADD_MODE = "0" *) 
(* C_B_CONSTANT = "0" *) (* C_B_VALUE = "00000000000000000000000000" *) (* C_AINIT_VAL = "0" *) 
(* C_SINIT_VAL = "0" *) (* C_CE_OVERRIDES_BYPASS = "1" *) (* C_BYPASS_LOW = "0" *) 
(* C_SCLR_OVERRIDES_SSET = "1" *) (* C_HAS_C_IN = "0" *) (* C_HAS_C_OUT = "0" *) 
(* C_BORROW_LOW = "1" *) (* C_HAS_CE = "0" *) (* C_HAS_BYPASS = "0" *) 
(* C_HAS_SCLR = "0" *) (* C_HAS_SSET = "0" *) (* C_HAS_SINIT = "0" *) 
(* downgradeipidentifiedwarnings = "yes" *) 
module AddSub26Sx26S_c_addsub_v12_0__parameterized0
   (A,
    B,
    CLK,
    ADD,
    C_IN,
    CE,
    BYPASS,
    SCLR,
    SSET,
    SINIT,
    C_OUT,
    S);
  input [25:0]A;
  input [25:0]B;
  input CLK;
  input ADD;
  input C_IN;
  input CE;
  input BYPASS;
  input SCLR;
  input SSET;
  input SINIT;
  output C_OUT;
  output [26:0]S;

  wire [25:0]A;
  wire ADD;
  wire [25:0]B;
  wire BYPASS;
  wire CE;
  wire CLK;
  wire C_IN;
  wire C_OUT;
  wire [26:0]S;
  wire SCLR;
  wire SINIT;
  wire SSET;

(* C_AINIT_VAL = "0" *) 
   (* C_BORROW_LOW = "1" *) 
   (* C_CE_OVERRIDES_BYPASS = "1" *) 
   (* C_CE_OVERRIDES_SCLR = "0" *) 
   (* C_HAS_CE = "0" *) 
   (* C_HAS_SCLR = "0" *) 
   (* C_HAS_SINIT = "0" *) 
   (* C_HAS_SSET = "0" *) 
   (* C_IMPLEMENTATION = "0" *) 
   (* C_SCLR_OVERRIDES_SSET = "1" *) 
   (* C_SINIT_VAL = "0" *) 
   (* C_VERBOSITY = "0" *) 
   (* C_XDEVICEFAMILY = "zynq" *) 
   (* c_a_type = "0" *) 
   (* c_a_width = "26" *) 
   (* c_add_mode = "0" *) 
   (* c_b_constant = "0" *) 
   (* c_b_type = "0" *) 
   (* c_b_value = "00000000000000000000000000" *) 
   (* c_b_width = "26" *) 
   (* c_bypass_low = "0" *) 
   (* c_has_bypass = "0" *) 
   (* c_has_c_in = "0" *) 
   (* c_has_c_out = "0" *) 
   (* c_latency = "3" *) 
   (* c_out_width = "27" *) 
   (* downgradeipidentifiedwarnings = "yes" *) 
   AddSub26Sx26S_c_addsub_v12_0_viv__parameterized0 xst_addsub
       (.A(A),
        .ADD(ADD),
        .B(B),
        .BYPASS(BYPASS),
        .CE(CE),
        .CLK(CLK),
        .C_IN(C_IN),
        .C_OUT(C_OUT),
        .S(S),
        .SCLR(SCLR),
        .SINIT(SINIT),
        .SSET(SSET));
endmodule
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PF9st4JKNi7Jj+3BjraEADaehV03ULkWusFR8Q==
`pragma protect end_protected
`pragma protect begin_protected
`pragma protect version = 1
`pragma protect encrypt_agent = "XILINX"
`pragma protect encrypt_agent_info = "Xilinx Encryption Tool 2014"
`pragma protect key_keyowner = "Cadence Design Systems.", key_keyname= "cds_rsa_key", key_method = "rsa"
`pragma protect encoding = (enctype = "BASE64", line_length = 76, bytes = 64)
`pragma protect key_block
EqeSQPTUNoqpnK4nVrjuhvpLxxZNDJh+LNRK2Fq61au3XOscZMNjSdFnJGIReM9px3jwUK8mWPLM
l2UaT6RoRA==


`pragma protect key_keyowner = "Mentor Graphics Corporation", key_keyname= "MGC-VERIF-SIM-RSA-1", key_method = "rsa"
`pragma protect encoding = (enctype = "BASE64", line_length = 76, bytes = 128)
`pragma protect key_block
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CGJBYbRGF6KlMQNiZY0=


`pragma protect key_keyowner = "Xilinx", key_keyname= "xilinx_2014_03", key_method = "rsa"
`pragma protect encoding = (enctype = "BASE64", line_length = 76, bytes = 256)
`pragma protect key_block
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rBSZZfGWP10mmogiFuBlCAiom0an10D3fyeyPg==


`pragma protect key_keyowner = "Synopsys", key_keyname= "SNPS-VCS-RSA-1", key_method = "rsa"
`pragma protect encoding = (enctype = "BASE64", line_length = 76, bytes = 128)
`pragma protect key_block
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A1N5W7f+UYJsQ1elVQIeuHDqtbs7RZnlbev9ajKV9Zt3Z/WSjOprvHNPsZgKUtaI8RvScZB/fcq1
oXqq1F7MyeI4y80ngnI=


`pragma protect key_keyowner = "Aldec", key_keyname= "ALDEC08_001", key_method = "rsa"
`pragma protect encoding = (enctype = "BASE64", line_length = 76, bytes = 256)
`pragma protect key_block
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zrKAQZN0HUwBMy4hmHFt9BxCWeiaePF4YxGslc2uxKsVjTCjrSPjd1ftP+z2FG37n3xJqaJCrDQC
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bOse6nbEPbWW/7zlGjNWrNnVDHAgljR3ggdQlQMXqjkaYS66ItrqNf5UZjFaEdWHlmxH3j3f9J2Z
6DYkLL8cKeUmFtTLEhGydAnLHmEpCwTNXRGFnA==


`pragma protect key_keyowner = "Mentor Graphics Corporation", key_keyname= "MGC-PREC-RSA", key_method = "rsa"
`pragma protect encoding = (enctype = "BASE64", line_length = 76, bytes = 256)
`pragma protect key_block
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HtomSe7i9XaQw0g9DJMxMygu4TgG5betBaCAM/JTEjTIDB91mWlWzOPKBIGHxSMeyR69SisFQysX
yUbABStF+n+1JZBSzePSSHejp2O8RhiEDJsVAC/fbriPPRbc3X58JBiWXQTztdu6W3MFt79jLshH
oACcLG8HVnqOZYJHrFiUYmCQYDAA9p1Es8kqsg==


`pragma protect key_keyowner = "Synplicity", key_keyname= "SYNP05_001", key_method = "rsa"
`pragma protect encoding = (enctype = "BASE64", line_length = 76, bytes = 256)
`pragma protect key_block
qSEHxFuLpdJjWHdnsJY/fmuigtesiidlz4y7M4vH086dwrahl1+0LE1NwTqgHkwGO3myBjLHDGMP
JjNnsuNEndtFHZu7SyEN94IgP13293SVmQyoLTVpI47RlRJQnUkFAuZl2uQH5iDfNLo2RLEX4YLZ
D8ZuPNM2uuQdf8LcqMuBx0Z1mP3EcizU5e51yZPN6sCyFqm7ZqLrtKUfWHIqWsV/8HxaQxixa+PV
PSFog/E4TYi2YCLIoQtxmMER6Tyktzz39GaSXoB++tU89oC+GcMZjYVr+1ySeiOCcSZtxBU//usw
4JEkFuWnBedKprF7v5Kh+pv3PlXT95XjQkRX1g==


`pragma protect data_method = "AES128-CBC"
`pragma protect encoding = (enctype = "BASE64", line_length = 76, bytes = 16272)
`pragma protect data_block
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S1uSJ/yLpk14mvEED3ZgNfe1IKs7z+PF13mG5uqPXfLDZlVCH6LGivbnSn1WI48oHk0v8b7UjOZM
TbXB9NVkJq5atREa/2M7TliZFmO7f4GCKjEpBLqog/zb5fuT7KZqsUDxSdg9R687GvOKBqBPYMw8
5VPnt3KNHc5qEPxSR34sxtFTalvKYPzYRtyHDgMr3eg+FxMzpXC94ImaL+REol7T04cH0uYHX2EU
afgWVTZXeXhqTCOACCvaidNaoHLXpEZkXgIGNW6qKlrVLOyZg9npLZGbO6tk+p6mJ3gS0BeLyXtR
spVXAGMqTquny02Zp9tVVWdRSlJGRHtFA/hgyGt2u/t+YE7tC/VtiPoSV7KceAgGZ3kgIqksBoRn
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AwJDu0RwjksX2cW8uQIRboYCvikvQPHjIMupIOMfEvq8xNCj4sY6VkNFmE4gssAW4bpwxbFVsYBC
avdldKeYgVjCtOCrkn/Kk9th6Tmkdx26ED7AbDGizyrOPnXYzN99J+NjJZXqb1RhP1ymT0lksw0u
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KenoHt1994vvwbcfwRVezUV7ltFXr+6MMgWfe5XWRphrx6mESM9+UMrN1AhA13zPft97qCieJySn
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C757WDNeNW2bUQhrdAV37ve8PtJpqjW7ffah6g/s9SjjdphNJdvklSdwRG/scblItsImV/0sagtK
2w1INpMjw1DCLNMY94VoVC+MGUcN5STaoHkJWVaxTPeZ5gevsxG8amJiy9VROv8IFHf2yAPepJVR
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`pragma protect end_protected
`ifndef GLBL
`define GLBL
`timescale  1 ps / 1 ps

module glbl ();

    parameter ROC_WIDTH = 100000;
    parameter TOC_WIDTH = 0;

//--------   STARTUP Globals --------------
    wire GSR;
    wire GTS;
    wire GWE;
    wire PRLD;
    tri1 p_up_tmp;
    tri (weak1, strong0) PLL_LOCKG = p_up_tmp;

    wire PROGB_GLBL;
    wire CCLKO_GLBL;
    wire FCSBO_GLBL;
    wire [3:0] DO_GLBL;
    wire [3:0] DI_GLBL;
   
    reg GSR_int;
    reg GTS_int;
    reg PRLD_int;

//--------   JTAG Globals --------------
    wire JTAG_TDO_GLBL;
    wire JTAG_TCK_GLBL;
    wire JTAG_TDI_GLBL;
    wire JTAG_TMS_GLBL;
    wire JTAG_TRST_GLBL;

    reg JTAG_CAPTURE_GLBL;
    reg JTAG_RESET_GLBL;
    reg JTAG_SHIFT_GLBL;
    reg JTAG_UPDATE_GLBL;
    reg JTAG_RUNTEST_GLBL;

    reg JTAG_SEL1_GLBL = 0;
    reg JTAG_SEL2_GLBL = 0 ;
    reg JTAG_SEL3_GLBL = 0;
    reg JTAG_SEL4_GLBL = 0;

    reg JTAG_USER_TDO1_GLBL = 1'bz;
    reg JTAG_USER_TDO2_GLBL = 1'bz;
    reg JTAG_USER_TDO3_GLBL = 1'bz;
    reg JTAG_USER_TDO4_GLBL = 1'bz;

    assign (weak1, weak0) GSR = GSR_int;
    assign (weak1, weak0) GTS = GTS_int;
    assign (weak1, weak0) PRLD = PRLD_int;

    initial begin
	GSR_int = 1'b1;
	PRLD_int = 1'b1;
	#(ROC_WIDTH)
	GSR_int = 1'b0;
	PRLD_int = 1'b0;
    end

    initial begin
	GTS_int = 1'b1;
	#(TOC_WIDTH)
	GTS_int = 1'b0;
    end

endmodule
`endif
